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Contrasting patterns of phenotypic plasticity in reproductive traits in two great tit (Parus major) populations

机译:两个大山雀(大对虾)种群生殖性状的表型可塑性对比模式

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Phenotypic plasticity is an important mechanism via which populations can respond to changing environmental conditions, but we know very little about how natural populations vary with respect to plasticity. Here we use random-regression animal models to understand the multivariate phenotypic and genetic patterns of plasticity variation in two key life-history traits, laying date and clutch size, using data from long-term studies of great tits in The Netherlands (Hoge Veluwe [HV]) and UK (Wytham Woods [WW]). We show that, while population-level responses of laying date and clutch size to temperature were similar in the two populations, between-individual variation in plasticity differed markedly. Both populations showed significant variation in phenotypic plasticity (IxE) for laying date, but IxE was significantly higher in HV than in WW. There were no significant genotype-by-environment interactions (GxE) for laying date, yet differences in GxE were marginally nonsignificant between HV and WW. For clutch size, we only found significant IxE and GxE in WW but no significant difference between populations. From a multivariate perspective, plasticity in laying date was not correlated with plasticity in clutch size in either population. Our results suggest that generalizations about the form and cause of any response to changing environmental conditions across populations may be difficult.
机译:表型可塑性是种群可以对不断变化的环境条件做出反应的重要机制,但是我们对自然种群的可塑性如何变化知之甚少。在这里,我们使用来自荷兰大山雀的长期研究数据(Hoge Veluwe [[Hoge Veluwe [[Hoge Veluwe [ HV])和英国(Wytham Woods [WW])。我们显示,尽管两个种群的产蛋日期和离婚大小对温度的种群水平响应相似,但可塑性之间的个体差异却显着不同。两种种群在产蛋日的表型可塑性(IxE)均存在显着差异,但HV中的IxE显着高于WW。产蛋日期之间没有显着的基因型-环境相互作用(GxE),但是HV和WW之间的GxE差异几乎没有统计学意义。对于离合器尺寸,我们仅在WW中发现显着的IxE和GxE,但总体之间没有显着差异。从多变量的角度来看,两个人群中产蛋期的可塑性与离合器尺寸的可塑性均不相关。我们的结果表明,关于对人群中不断变化的环境条件做出任何反应的形式和原因的概括可能很困难。

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